Yadav Mansi, Gupta Jassika, Chatterjee Debalina, Mittal Parul, Shrivastava Anju, Agrawal Namita
Department of Zoology, University of Delhi, New Delhi, India.
PLoS One. 2025 May 14;20(5):e0322707. doi: 10.1371/journal.pone.0322707. eCollection 2025.
Macrophages are essential innate immune system components, exhibiting diverse functions crucial for disease prevention. While much is known about their role in innate immunity, studying their functional versatility remains a challenge. Drosophila serves as an excellent model for investigating innate immune signaling due to parallels with vertebrate macrophages. Despite extensive research on larval plasmatocytes, there is a lack of sufficient published literature on adult plasmatocytes, hindering understanding of their contribution to late-onset diseases and aging. Current hemolymph extraction protocols from adult flies have limitations, making them less suitable for immunology experiments that require consistency and minimal stress on flies. Most established methods involve specialized tools such as nanoinjectors, silica capillary probes, etc. which are arduous and require advanced equipment. Although these approaches overcome some challenges in immune cell research, they remain complex and technically intricate. Here, for the first time, we present a protocol for quick, easy, cost-effective, and systematic isolation of adult Drosophila plasmatocytes by which we achieve nearly 2500 cells. We strongly suggest that this protocol might facilitate studies aiming to elucidate molecular and genetic mechanisms associated with immune response in various ailments enabling the exploration of immune cell dynamics, cell signaling and their role in disease progression.
巨噬细胞是先天性免疫系统的重要组成部分,具有多种对疾病预防至关重要的功能。虽然人们对它们在先天性免疫中的作用已经了解很多,但研究它们的功能多样性仍然是一项挑战。由于与脊椎动物巨噬细胞有相似之处,果蝇是研究先天性免疫信号传导的优秀模型。尽管对幼虫浆细胞进行了广泛研究,但关于成年浆细胞的已发表文献不足,这阻碍了人们对它们在迟发性疾病和衰老中的作用的理解。目前从成年果蝇中提取血淋巴的方案存在局限性,不太适合需要一致性且对果蝇压力最小的免疫学实验。大多数既定方法涉及纳米注射器、硅胶毛细管探针等专门工具,这些工具操作繁琐且需要先进设备。尽管这些方法克服了免疫细胞研究中的一些挑战,但它们仍然复杂且技术难度大。在此,我们首次提出了一种快速、简便、经济高效且系统地分离成年果蝇浆细胞的方案,通过该方案我们获得了近2500个细胞。我们强烈建议该方案可能有助于旨在阐明各种疾病中与免疫反应相关的分子和遗传机制的研究,从而能够探索免疫细胞动态学、细胞信号传导及其在疾病进展中的作用。